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芽殖位点选择所必需的一个酵母基因编码一种与胰岛素降解酶相似的蛋白质。

A yeast gene necessary for bud-site selection encodes a protein similar to insulin-degrading enzymes.

作者信息

Fujita A, Oka C, Arikawa Y, Katagai T, Tonouchi A, Kuhara S, Misumi Y

机构信息

National Institute of Bioscience and Human-Technology, Tsukuba, Japan.

出版信息

Nature. 1994 Dec 8;372(6506):567-70. doi: 10.1038/372567a0.

Abstract

Cells of the yeast Saccharomyces cerevisiae choose bud sites in a non-random spatial pattern that depends on mating type: axial for haploid cells and bipolar for a/alpha diploid cells. We identified a mutant yeast, axl 1, in which the budding pattern is altered from axial to bipolar. Expression of the AXL1 gene is repressed in a/alpha diploid cells. With the ectopic expression of AXL1, a/alpha cells exhibited an axial budding pattern, thus AXL1 is a key morphological determinant that distinguishes the budding pattern of haploid cells from that of a/alpha diploid cells. AXL1 encodes a protein similar in sequence of the human and Drosophila insulin-degrading enzymes and to the Escherichia coli ptr gene product. The axial budding pattern might result from degradation of a target protein by the putative Axl1 protease.

摘要

酿酒酵母细胞以非随机的空间模式选择芽殖位点,该模式取决于交配型:单倍体细胞为轴向模式,a/α二倍体细胞为双极模式。我们鉴定出一种突变酵母axl 1,其芽殖模式从轴向模式改变为双极模式。AXL1基因的表达在a/α二倍体细胞中受到抑制。随着AXL1的异位表达,a/α细胞呈现轴向芽殖模式,因此AXL1是区分单倍体细胞和a/α二倍体细胞芽殖模式的关键形态决定因素。AXL1编码一种蛋白质,其序列与人类和果蝇的胰岛素降解酶以及大肠杆菌ptr基因产物相似。轴向芽殖模式可能是由假定的Axl1蛋白酶对靶蛋白的降解导致的。

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